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Turbulent Heat Transfer to Heavy Liquid Metals in Circular Tubes

机译:湍流传热到圆管中的重液态金属

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摘要

The present paper gives a brief literature review on turbulent heat transfer in heavy liquid metals (HLM), especially liquid lead-bismuth eutectic (LBE). Some models available in the open literature on heat transfer and turbulent Prandtl number are assessed. In addition, CFD analysis is carried out for circular tube geometries. The effect of turbulence models, mesh structure and turbulent Prandtl number on the numerical results is studied. Application of ε-type turbulence models with scalable wall function shows less dependence of the numerical results on mesh structure than the ω-type turbulence models with automatic wall treatment. The turbulent Prandtl number affects strongly the heat transfer performance. Comparison between the CFD results, heat transfer correlations and heat transfer test data reveals a decrease in turbulent Prandtl number by increasing Reynolds number. Based on the results achieved, recommendations are made on correlations of heat transfer and turbulent Prandtl number for LBE flows.
机译:本文对重液态金属(HLM),特别是液态铅-铋共晶(LBE)中的湍流传热作了简要的文献综述。评估了公开文献中有关传热和湍流普朗特数的一些模型。另外,对圆管几何形状进行了CFD分析。研究了湍流模型,网格结构和湍流普朗特数对数值结果的影响。与具有自动墙处理的ω型湍流模型相比,具有可扩展的壁函数的ε型湍流模型的应用显示了数值结果对网格结构的依赖性较小。湍流的普朗特数严重影响传热性能。 CFD结果,传热相关性和传热测试数据之间的比较表明,通过增加雷诺数,湍流的普朗特数减小。根据获得的结果,就LBE流动的传热和湍流Prandtl数的相关性提出了建议。

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